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Box Jellyfish (Cnidaria, Cubozoa) Extract Increases Neuron's Connection: A Possible Neuroprotector Effect

Neurodegenerative diseases are one of the major causes of death worldwide, characterized by neurite atrophy, neuron apoptosis, and synapse loss. No effective treatment has been indicated for such diseases so far, and the search for new drugs is being increased in the last years. Animal venoms'...

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Autores principales: Arruda, Gian Lucas M., Vigerelli, Hugo, Bufalo, Michelle C., Longato, Giovanna B., Veloso, Rodinei V., Zambelli, Vanessa O., Picolo, Gisele, Cury, Yara, Morandini, André C., Marques, Antonio Carlos, Sciani, Juliana Mozer
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7954621/
https://www.ncbi.nlm.nih.gov/pubmed/33748281
http://dx.doi.org/10.1155/2021/8855248
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author Arruda, Gian Lucas M.
Vigerelli, Hugo
Bufalo, Michelle C.
Longato, Giovanna B.
Veloso, Rodinei V.
Zambelli, Vanessa O.
Picolo, Gisele
Cury, Yara
Morandini, André C.
Marques, Antonio Carlos
Sciani, Juliana Mozer
author_facet Arruda, Gian Lucas M.
Vigerelli, Hugo
Bufalo, Michelle C.
Longato, Giovanna B.
Veloso, Rodinei V.
Zambelli, Vanessa O.
Picolo, Gisele
Cury, Yara
Morandini, André C.
Marques, Antonio Carlos
Sciani, Juliana Mozer
author_sort Arruda, Gian Lucas M.
collection PubMed
description Neurodegenerative diseases are one of the major causes of death worldwide, characterized by neurite atrophy, neuron apoptosis, and synapse loss. No effective treatment has been indicated for such diseases so far, and the search for new drugs is being increased in the last years. Animal venoms' secretion/venom can be an alternative for the discovery of new molecules, which could be the prototype for a new treatment. Here, we present the biochemical characterization and activity of the extract from the box jellyfish Chiropsalmus quadrumanus (Cq) on neurites. The Cq methanolic extract was obtained and incubated to human SH-SY5Y neurons, and neurite parameters were evaluated. The extract was tested in other cell types to check its cytotoxicity and was submitted to biochemical analysis by mass spectrometry in order to check its composition. We could verify that the Cq extract increased neurite outgrowth length and branching junctions, amplifying the contact between SH-SY5Y neurons, without affecting cell body and viability. The extract action was selective for neurons, as it did not cause any effects on other cell types, such as tumor line, nontumor line, and red blood cells. Moreover, mass spectrometry analysis revealed that there are no proteins but several low molecular mass compounds and peptides. Three peptides, characterized as cryptides, and 14 low molecular mass compounds were found to be related to cytoskeleton reorganization, cell membrane expansion, and antioxidant/neuroprotective activity, which act together to increase neuritogenesis. After this evaluation, we conclude that the Cq extract is a promising tool for neuronal connection recovery, an essential condition for the treatment of neurodegenerative diseases.
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spelling pubmed-79546212021-03-19 Box Jellyfish (Cnidaria, Cubozoa) Extract Increases Neuron's Connection: A Possible Neuroprotector Effect Arruda, Gian Lucas M. Vigerelli, Hugo Bufalo, Michelle C. Longato, Giovanna B. Veloso, Rodinei V. Zambelli, Vanessa O. Picolo, Gisele Cury, Yara Morandini, André C. Marques, Antonio Carlos Sciani, Juliana Mozer Biomed Res Int Research Article Neurodegenerative diseases are one of the major causes of death worldwide, characterized by neurite atrophy, neuron apoptosis, and synapse loss. No effective treatment has been indicated for such diseases so far, and the search for new drugs is being increased in the last years. Animal venoms' secretion/venom can be an alternative for the discovery of new molecules, which could be the prototype for a new treatment. Here, we present the biochemical characterization and activity of the extract from the box jellyfish Chiropsalmus quadrumanus (Cq) on neurites. The Cq methanolic extract was obtained and incubated to human SH-SY5Y neurons, and neurite parameters were evaluated. The extract was tested in other cell types to check its cytotoxicity and was submitted to biochemical analysis by mass spectrometry in order to check its composition. We could verify that the Cq extract increased neurite outgrowth length and branching junctions, amplifying the contact between SH-SY5Y neurons, without affecting cell body and viability. The extract action was selective for neurons, as it did not cause any effects on other cell types, such as tumor line, nontumor line, and red blood cells. Moreover, mass spectrometry analysis revealed that there are no proteins but several low molecular mass compounds and peptides. Three peptides, characterized as cryptides, and 14 low molecular mass compounds were found to be related to cytoskeleton reorganization, cell membrane expansion, and antioxidant/neuroprotective activity, which act together to increase neuritogenesis. After this evaluation, we conclude that the Cq extract is a promising tool for neuronal connection recovery, an essential condition for the treatment of neurodegenerative diseases. Hindawi 2021-03-04 /pmc/articles/PMC7954621/ /pubmed/33748281 http://dx.doi.org/10.1155/2021/8855248 Text en Copyright © 2021 Gian Lucas M. Arruda et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Arruda, Gian Lucas M.
Vigerelli, Hugo
Bufalo, Michelle C.
Longato, Giovanna B.
Veloso, Rodinei V.
Zambelli, Vanessa O.
Picolo, Gisele
Cury, Yara
Morandini, André C.
Marques, Antonio Carlos
Sciani, Juliana Mozer
Box Jellyfish (Cnidaria, Cubozoa) Extract Increases Neuron's Connection: A Possible Neuroprotector Effect
title Box Jellyfish (Cnidaria, Cubozoa) Extract Increases Neuron's Connection: A Possible Neuroprotector Effect
title_full Box Jellyfish (Cnidaria, Cubozoa) Extract Increases Neuron's Connection: A Possible Neuroprotector Effect
title_fullStr Box Jellyfish (Cnidaria, Cubozoa) Extract Increases Neuron's Connection: A Possible Neuroprotector Effect
title_full_unstemmed Box Jellyfish (Cnidaria, Cubozoa) Extract Increases Neuron's Connection: A Possible Neuroprotector Effect
title_short Box Jellyfish (Cnidaria, Cubozoa) Extract Increases Neuron's Connection: A Possible Neuroprotector Effect
title_sort box jellyfish (cnidaria, cubozoa) extract increases neuron's connection: a possible neuroprotector effect
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7954621/
https://www.ncbi.nlm.nih.gov/pubmed/33748281
http://dx.doi.org/10.1155/2021/8855248
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